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采用动态pH结扫掠毛细管电泳结合激光诱导荧光检测法对黄素衍生物进行在线聚焦。

On-line focusing of flavin derivatives using Dynamic pH junction-sweeping capillary electrophoresis with laser-induced fluorescence detection.

作者信息

Britz-McKibbin Philip, Otsuka Koji, Terabe Shigeru

机构信息

Department of Material Sciences, Graduate School and Faculty of Science, Himeji Institute of Technology, Kamigori, Hyogo, Japan.

出版信息

Anal Chem. 2002 Aug 1;74(15):3736-43. doi: 10.1021/ac025701o.

Abstract

Simple yet effective methods to enhance concentration sensitivity is needed for capillary electrophoresis (CE) to become a practical method to analyze trace levels of analytes in real samples. In this report, the development of a novel on-line preconcentration technique combining dynamic pH junction and sweeping modes of focusing is applied to the sensitive and selective analysis of three flavin derivatives: riboflavin, flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD). Picomolar (pM) detectability of flavins by CE with laser-induced fluorescence (LIF) detection is demonstrated through effective focusing of large sample volumes (up to 22% capillary length) using a dual pH junction-sweeping focusing mode. This results in greater than a 1,200-fold improvement in sensitivity relative to conventional injection methods, giving a limit of detection (S/N = 3) of approximately 4.0 pM for FAD and FMN. Flavin focusing is examined in terms of analyte mobility dependence on buffer pH, borate complexation and SDS interaction. Dynamic pH junction-sweeping extends on-line focusing to both neutral (hydrophobic) and weakly acidic (hydrophilic) species and is considered useful in cases when either conventional sweeping or dynamic pH junction techniques used alone are less effective for certain classes of analytes. Enhanced focusing performance by this hyphenated method was demonstrated by greater than a 4-fold reduction in flavin bandwidth, as compared to either sweeping or dynamic pH junction, reflected by analyte detector bandwidths <0.20 cm. Novel on-line focusing strategies are required to improve sensitivity in CE, which may be applied toward more effective biochemical analysis methods for diverse types of analytes.

摘要

为使毛细管电泳(CE)成为分析实际样品中痕量分析物的实用方法,需要简单而有效的方法来提高浓度灵敏度。在本报告中,一种结合动态pH连接和扫描聚焦模式的新型在线预浓缩技术被用于对三种黄素衍生物:核黄素、黄素单核苷酸(FMN)和黄素腺嘌呤二核苷酸(FAD)进行灵敏且选择性的分析。通过使用双pH连接-扫描聚焦模式对大量样品体积(高达毛细管长度的22%)进行有效聚焦,证明了采用激光诱导荧光(LIF)检测的CE对黄素具有皮摩尔(pM)级的检测能力。相对于传统进样方法,灵敏度提高了1200倍以上,FAD和FMN的检测限(S/N = 3)约为4.0 pM。从分析物迁移率对缓冲液pH值、硼酸盐络合和SDS相互作用的依赖性方面对黄素聚焦进行了研究。动态pH连接-扫描将在线聚焦扩展到中性(疏水)和弱酸性(亲水)物质,并且在单独使用传统扫描或动态pH连接技术对某些类别的分析物效果较差的情况下被认为是有用的。与扫描或动态pH连接相比,这种联用方法通过使黄素带宽降低4倍以上证明了增强的聚焦性能,分析物检测器带宽<0.20 cm反映了这一点。需要新的在线聚焦策略来提高CE中的灵敏度,这可应用于针对不同类型分析物的更有效的生化分析方法。

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